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Search Results to Michael Carleton Rudolph

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One or more keywords matched the following items that are connected to Rudolph, Michael

Item TypeName
Academic Article Functional development of the mammary gland: use of expression profiling and trajectory clustering to reveal changes in gene expression during pregnancy, lactation, and involution.
Academic Article Key stages in mammary gland development. Secretory activation in the mammary gland: it's not just about milk protein synthesis!
Academic Article Metabolic regulation in the lactating mammary gland: a lipid synthesizing machine.
Academic Article Lipid synthesis in lactation: diet and the fatty acid switch.
Academic Article Identifying significant temporal variation in time course microarray data without replicates.
Academic Article Sterol regulatory element binding protein and dietary lipid regulation of fatty acid synthesis in the mammary epithelium.
Academic Article Prolactin-mediated regulation of lipid biosynthesis genes in vivo in the lactating mammary epithelial cell.
Academic Article Cytoplasmic lipid droplet accumulation in developing mammary epithelial cells: roles of adipophilin and lipid metabolism.
Academic Article Microenvironment of the involuting mammary gland mediates mammary cancer progression.
Academic Article Impaired tight junction sealing and precocious involution in mammary glands of PKN1 transgenic mice.
Academic Article Adipose-depleted mammary epithelial cells and organoids.
Concept Mammary Glands, Animal
Concept Mammary Glands, Human
Academic Article Thyroid hormone responsive protein Spot14 enhances catalysis of fatty acid synthase in lactating mammary epithelium.
Academic Article Constitutive expression of microRNA-150 in mammary epithelium suppresses secretory activation and impairs de novo lipogenesis.
Academic Article Human Milk Fatty Acid Composition: Comparison of Novel Dried Milk Spot Versus Standard Liquid Extraction Methods.
Academic Article Developmental Expression of Claudins in the Mammary Gland.
Academic Article Adipocyte hypertrophy and lipid dynamics underlie mammary gland remodeling after lactation.
Academic Article Liver X receptor-a activation enhances cholesterol secretion in lactating mammary epithelium.
Academic Article Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
Academic Article Resolving Human Lactation Heterogeneity Using Single Milk-Derived Cells, a Resource at the Ready.

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  • Mammary Gland

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